A polymer tandem solar cell with 10.6% power conversion efficiency

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作者
Jingbi You
Letian Dou
Ken Yoshimura
Takehito Kato
Kenichiro Ohya
Tom Moriarty
Keith Emery
Chun-Chao Chen
Jing Gao
Gang Li
Yang Yang
机构
[1] University of California,Department of Material Science and Engineering
[2] Los Angeles,undefined
[3] Tsukuba Material Development Laboratory,undefined
[4] Sumitomo Chemical Co.,undefined
[5] Ltd. 6,undefined
[6] National Renewable Energy Laboratory,undefined
[7] California NanoSystems Institute,undefined
[8] University of California,undefined
[9] Los Angeles,undefined
[10] Present address: Department of Mechanical Engineering,undefined
[11] Oyama National College of Technology,undefined
[12] 771 Nakakuki,undefined
[13] Oyama 323-0806,undefined
[14] Japan,undefined
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摘要
An effective way to improve polymer solar cell efficiency is to use a tandem structure, as a broader part of the spectrum of solar radiation is used and the thermalization loss of photon energy is minimized. In the past, the lack of high-performance low-bandgap polymers was the major limiting factor for achieving high-performance tandem solar cell. Here we report the development of a high-performance low bandgap polymer (bandgap <1.4 eV), poly[2,7-(5,5-bis-(3,7-dimethyloctyl)-5H-dithieno[3,2-b:2′,3′-d]pyran)-alt-4,7-(5,6-difluoro-2,1,3-benzothia diazole)] with a bandgap of 1.38 eV, high mobility, deep highest occupied molecular orbital. As a result, a single-junction device shows high external quantum efficiency of >60% and spectral response that extends to 900 nm, with a power conversion efficiency of 7.9%. The polymer enables a solution processed tandem solar cell with certified 10.6% power conversion efficiency under standard reporting conditions (25 °C, 1,000 Wm−2, IEC 60904-3 global), which is the first certified polymer solar cell efficiency over 10%.
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